Cancer Research UK Scotland Institute, Switchback Road, Glasgow G61 1BD, UK.
Division of Molecular Cell Biology, Zoological Institute, Technische Universität Braunschweig, Spielmannstrasse 7, 38106 Braunschweig, Germany; Department of Cell Biology, Helmholtz Centre for Infection Research, Inhoffenstrasse 7, 38124 Braunschweig, Germany.
Curr Biol. 2024 Oct 7;34(19):4436-4451.e9. doi: 10.1016/j.cub.2024.08.013. Epub 2024 Sep 26.
Cell migration requires the constant modification of cellular shape by reorganization of the actin cytoskeleton. Fine-tuning of this process is critical to ensure new actin filaments are formed only at specific times and in defined regions of the cell. The Scar/WAVE complex is the main catalyst of pseudopod and lamellipodium formation during cell migration. It is a pentameric complex highly conserved through eukaryotic evolution and composed of Scar/WAVE, Abi, Nap1/NCKAP1, Pir121/CYFIP, and HSPC300/Brk1. Its function is usually attributed to activation of the Arp2/3 complex through Scar/WAVE's VCA domain, while other parts of the complex are expected to mediate spatial-temporal regulation and have no direct role in actin polymerization. Here, we show in both B16-F1 mouse melanoma and Dictyostelium discoideum cells that Scar/WAVE without its VCA domain still induces the formation of morphologically normal, actin-rich protrusions, extending at comparable speeds despite a drastic reduction of Arp2/3 recruitment. However, the proline-rich regions in Scar/WAVE and Abi subunits are essential, though either is sufficient for the generation of actin protrusions in B16-F1 cells. We further demonstrate that N-WASP can compensate for the absence of Scar/WAVE's VCA domain and induce lamellipodia formation, but it still requires an intact WAVE complex, even if without its VCA domain. We conclude that the Scar/WAVE complex does more than directly activating Arp2/3, with proline-rich domains playing a central role in promoting actin protrusions. This implies a broader function for the Scar/WAVE complex, concentrating and simultaneously activating many actin-regulating proteins as a lamellipodium-producing core.
细胞迁移需要通过肌动蛋白细胞骨架的重组不断改变细胞形状。精细调节这个过程对于确保新的肌动蛋白丝仅在特定时间和细胞的特定区域形成至关重要。Scar/WAVE 复合物是细胞迁移过程中伪足和片状伪足形成的主要催化剂。它是一个五聚体复合物,在真核生物进化过程中高度保守,由 Scar/WAVE、Abi、Nap1/NCKAP1、Pir121/CYFIP 和 HSPC300/Brk1 组成。它的功能通常归因于 Scar/WAVE 的 VCA 结构域激活 Arp2/3 复合物,而复合物的其他部分预计介导时空调节,并且在肌动蛋白聚合中没有直接作用。在这里,我们在 B16-F1 小鼠黑色素瘤和 Dictyostelium discoideum 细胞中都表明,没有 VCA 结构域的 Scar/WAVE 仍然诱导形态正常、富含肌动蛋白的突起形成,尽管 Arp2/3 募集急剧减少,但仍以相当的速度延伸。然而,Scar/WAVE 和 Abi 亚基中的脯氨酸丰富区是必需的,尽管在 B16-F1 细胞中产生肌动蛋白突起时,任何一个都足以。我们进一步证明 N-WASP 可以补偿 Scar/WAVE 的 VCA 结构域的缺失并诱导片状伪足形成,但即使没有 VCA 结构域,它仍然需要完整的 WAVE 复合物。我们得出结论,Scar/WAVE 复合物的作用不仅仅是直接激活 Arp2/3,脯氨酸丰富结构域在促进肌动蛋白突起中起着核心作用。这意味着 Scar/WAVE 复合物具有更广泛的功能,作为片状伪足产生的核心,集中并同时激活许多肌动蛋白调节蛋白。